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Experimental Bench-Scale Study of Residual Biomass Syngas Desulfurization Using ZnO-Based Adsorbents

机译:基于ZnO基吸附剂的残留生物质合成气脱硫的实验台级研究

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摘要

Dry-bed adsorptive desulfurization of biomass-based syngas with a low- to medium sulfur content using ZnO was studied as an alternative to conventional wet-scrubbing processes for a small- to medium-scale biomass-to-liquid process concept. Following laboratory-scale long-term H2S breakthrough experiments in a previous study, desulfurization tests were scaled-up to bench-scale with actual bio-syngas to verify the lab-scale results under more realistic process conditions. A desulfurization unit was constructed and connected to a steam-blown atmospheric pilot-scale fluidized bed gasifier. Two successful 70+ h test campaigns were conducted with H2S removal below the breakthrough limit using full-sized ZnO adsorbent particles. Scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy elemental analysis, and Brunauer-Emmett-Teller (BET) surface area characterization of the fresh and spent adsorbent pellets were performed. SEM micrographs displayed the outward enlarging particle size in the sulfided layer. Characterization showed significant core-shell sulfidation behavior with a few hundred micron-thick sulfided layer leaving the majority of ZnO unutilized. Adsorbents lost most of their porosity in use, which was evident from BET surface area results. Simultaneous COS removal was found possible by the hydrolysis reaction to H2S. Furthermore, evidence of minor chlorine adsorption was found, thus highlighting the need for a dedicated HCl removal step upstream of desulfurization.
机译:研究了使用ZnO的低至中硫含量的生物质基合成气的干床吸附脱硫作为常规湿擦洗过程的替代,用于小于中型生物质对液体过程概念。在先前的研究中进行实验室规模的长期H2S突破性实验,将脱硫试验用实际的生物合成气缩放到长凳,以验证在更现实的过程条件下的实验室规模结果。脱硫单元构造并连接到蒸汽吹塑的大气先导级流化床气化器。使用全尺寸的ZnO吸附剂颗粒,在突破极限下方进行了两次成功的70+ H测试活动。进行扫描电子显微镜(SEM),能量分散X射线光谱元素分析,并进行了新鲜和废吸附颗粒的Brunauer-Emmett-Teller(BET)表面积表征新鲜和废吸附粒料。 SEM显微照片显示在硫化层中的向外增大粒径。表征显示出显着的核心 - 壳硫化行为,几百微米厚的硫化层,留下大部分ZnO未计入。吸附剂在使用中失去了大部分孔隙度,这是从BET表面积的结果明显。通过对H 2 S的水解反应发现同时取出。此外,发现了轻微氯吸附的证据,从而突出了在脱硫上游的专用HCl去除步骤的需要。

著录项

  • 来源
    《Energy & fuels》 |2020年第3期|3326-3335|共10页
  • 作者单位

    VTT Tech Res Ctr Finland Ltd FI-02044 Espoo Finland;

    VTT Tech Res Ctr Finland Ltd FI-02044 Espoo Finland;

    VTT Tech Res Ctr Finland Ltd FI-02044 Espoo Finland;

    VTT Tech Res Ctr Finland Ltd FI-02044 Espoo Finland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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